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希腊雅典大学校园内微环境生物气象条件的建模与实地测量。

Modeling and in situ measurements of biometeorological conditions in microenvironments within the Athens University Campus, Greece.

作者信息

Nastos Panagiotis T, Polychroni Iliana D

机构信息

Laboratory of Climatology and Atmospheric Environment, Department of Geography and Climatology, Faculty of Geology and Geoenvironment, University of Athens, Panepistimiopolis, GR 157 84, Athens, Greece.

出版信息

Int J Biometeorol. 2016 Oct;60(10):1463-1479. doi: 10.1007/s00484-016-1137-8. Epub 2016 Feb 5.

Abstract

The objective of this research is to assess and analyze the biometeorological perception in complex microenvironments in the Athens University Campus (AUC) using urban micromodels, such as RayMan. The human thermal sensation in such a place was considered of great significance due to the great gathering of student body and staff of the University. The quantification of the biometeorological conditions was succeeded by the estimation of the physiologically equivalent temperature (PET), which is a biometeorological index based on the human energy balance. We carried out, on one hand, field measurements of air temperature, relative humidity, wind speed, and global solar irradiance for different sites (building atrium, open area, and green atrium) of the examined microurban environment in order to calculate PET during January-July 2013. Additionally, on the other hand, PET modeling was performed using different sky-view factors and was compared to a reference site (meteorological station of Laboratory of Climatology and Atmospheric Environment, University of Athens). The global radiation was transferred to the examined sites with the RayMan model, which considers the sky-view factors for the adaptation of the radiation fluxes to simple and complex environments. The results of this study reveal the crucial importance of the existence of trees and green cover in a complex environment, as a factor that could be the solution to the efforts of stake holders in order to mitigate strong heat stress and improve people's living quality in urban areas.

摘要

本研究的目的是使用诸如RayMan等城市微模型来评估和分析雅典大学校园(AUC)复杂微环境中的生物气象感知。由于该大学学生和教职工大量聚集,此类场所的人体热感觉具有重要意义。通过估算生理等效温度(PET)成功实现了生物气象条件的量化,PET是基于人体能量平衡的生物气象指标。一方面,我们对2013年1月至7月期间所研究的微城市环境中不同地点(建筑中庭、开阔区域和绿色中庭)的气温、相对湿度、风速和全球太阳辐照度进行了实地测量,以便计算PET。此外,另一方面,使用不同的天空视域因子进行了PET建模,并与一个参考站点(雅典大学气候学与大气环境实验室气象站)进行了比较。利用RayMan模型将全球辐射传输到所研究地点,该模型考虑天空视域因子以使辐射通量适应简单和复杂环境。本研究结果揭示了复杂环境中树木和绿色植被存在的至关重要性,这一因素可能是利益相关者缓解强烈热应激并改善城市地区人们生活质量的努力的解决方案。

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